Skip to main content

Crash avoidance technology on test

Nearly 3,000 cars, trucks and buses equipped with connected Wi-Fi technology to enable vehicles and infrastructure to ‘talk’ to each other in real time to help avoid crashes and improve traffic flow, began traversing Ann Arbor's streets yesterday as part of a year-long safety pilot project by the US Department of Transportation. Ray LaHood, US Transportation Secretary, joined elected officials and industry and community leaders on the University of Michigan campus to launch the second phase of the Safety Pi
August 22, 2012 Read time: 3 mins
Nearly 3,000 cars, trucks and buses equipped with connected Wi-Fi technology to enable vehicles and infrastructure to ‘talk’ to each other in real time to help avoid crashes and improve traffic flow, began traversing Ann Arbor's streets yesterday as part of a year-long safety pilot project by the 2364 US Department of Transportation. Ray LaHood, US Transportation Secretary, joined elected officials and industry and community leaders on the 5186 University of Michigan campus to launch the second phase of the Safety Pilot, said to be the largest road test to date of connected vehicle crash avoidance technology.

Conducted by University of Michigan's Transportation Research Institute (UMTRI), the road test, or model deployment, is claimed to be a first-of-its-kind test of connected vehicle technology in the real world. The test cars, trucks and buses, most of which have been supplied by volunteer participants, are equipped with vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication devices that will gather extensive data about system operability and its effectiveness at reducing crashes.

According to DoT's 2467 National Highway Traffic Safety Administration (NHTSA), V2V safety technology could help drivers avoid or reduce the severity of four out of five unimpaired vehicle crashes. To accomplish this, the model deployment vehicles will send electronic data messages, receive messages from other equipped vehicles, and translate the data into a warning to the driver during specific hazardous traffic scenarios. Such hazards include an impending collision at a blind intersection, a vehicle changing lanes in another vehicle's blind spot, or a rear collision with a vehicle stopped ahead, among others.

"Vehicle-to-vehicle communication has the potential to be the ultimate game-changer in roadway safety - but we need to understand how to apply the technology in an effective way in the real world," said NHTSA Administrator David Strickland. "NHTSA will use the valuable data from the 'model deployment' as it decides if and when these connected vehicle safety technologies should be incorporated into the fleet."

The model deployment is the second phase of DoT's connected vehicle Safety Pilot, a major research initiative managed by NHTSA and the 6431 Research and Innovative Technologies Administration (RITA) Intelligent Transportation Systems Joint Program Office. Earlier this year, DOT released data from a series of driver acceptance clinics conducted during the first phase of the Safety Pilot. The study revealed that an overwhelming majority of drivers (9 out of 10) who have experienced V2V technology have a highly favourable opinion of its safety benefits and would like to have V2V safety features on their personal vehicle.

"Many significant advances in roadway safety resulted from the collaborations between government, industry, and academia," said Gregory D. Winfree, RITA Deputy Administrator. "The deployment today is the culmination of years of cooperative research on forward-thinking technology designed to save lives and prevent injuries on America's roads."

The information collected from both phases of the Safety Pilot, and other key research projects, will be used by NHTSA to determine by 2013 whether to proceed with additional activities involving connected vehicle technology, including possible rulemaking. 

Related Content

  • ERIC 2016: What shape the ‘Smart Road’?
    February 7, 2017
    Optimism about the future of highways worldwide abounded at the inaugural European Road Infrastructure Conference (ERIC) in Leeds, UK Around 500 delegates passed through the varied sessions during the three-day event at the Royal Armouries Museum in the northern English city of Leeds. They came away with many visions of what a motorway and road could look like. But what speakers at the event - co-organised by the Brussels-based European Union Road Federation (ERF) and the UK’s Road Safety Markings Ass
  • Concerns for young drivers causing crashes
    May 24, 2016
    Concern is being expressed for the safety of young drivers. Statistics both from the US and the UK reveal the shockingly high risk of young drivers being involved in crashes. They also reveal that young drivers are a danger not only to themselves, but to other road users as well as the occupants of their own vehicles. The latest figures from the UK show that 2,088 young drivers and passengers aged from 17-24 were killed and seriously injured in just one year. Although the data shows that drivers aged fro
  • The use of concrete cutting tools and tips for users
    October 8, 2015
    Despite the proven importance of identifying metal targets and electrical lines before cutting into concrete, every day there are stories about mishaps that happen when the necessary reconnaissance is not done. In this article, a few firms that provide concrete scanning services weigh in on the critical importance of locating embedded and or buried obstructions by scanning for these features using ground penetrating radar (GPR). Also offered are tips for selecting the best GPR equipment and best practices f
  • Indra Sistemas joins European Commission’s study Harmony
    December 19, 2017
    Spanish global IT business Indra Sistemas is to join Harmony, a pan-European multimodal transport connectivity study. Harmony aims to develop technologies for integrating real-time data from different transport users and operators to improve multimodal information services. Indra will be focussed on a pilot project in Madrid, developed with the Polytechnic University of Madrid. Indra is working with research groups G@TV and TranSYT from the Polytechnic University of Madrid along with support from Grupo